Abstract. The latest observations of molecular gas and the atomic hydrogen content of local and high-redshift galaxies, coupled with how these correlate with star formation activity, have revolutionized our ideas about how to model star formation in a galactic context. A successful theory of galaxy formation has to explain some key facts: (i) high-redshift galaxies have higher molecular gas fractions and star formation rates than local galaxies, (ii) scaling relations show that the atomic-to-stellar mass ratio decreases with stellar mass in the local Universe, and (iii) the global abundance of atomic hydrogen evolves very weakly with time. We review how modern cosmological simulations of galaxy formation attempt to put these pieces together...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
ABSTRACT We have recently developed a post-processing framework to estimate the abun...
ABSTRACT We have recently developed a post-processing framework to estimate the abun...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
We study the evolution of the cold gas content of galaxies by splitting the interstellar medium into...
We study the evolution of atomic and molecular gas in galaxies in semi-analytic models of galaxy for...
We study the evolution of atomic and molecular gas in galaxies in semi-analytic models of galaxy for...
We investigate the atomic (HI) and molecular (H2) Hydrogen content of normal galaxies by combining o...
We present a simulation of the cosmic evolution of the atomic and molecular phases of the cold hydro...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
The current cosmological model, the Lambda CDM theory, describes with remarkable precision the assem...
In this chapter, we discuss the current status of observational and computational studies on galaxy ...
We extend the existing semi-analytic models of galaxy formation to track atomic and molecular gas in...
International audienceWe update our recently published model for GAlaxy Evolution and Assembly (GAEA...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
ABSTRACT We have recently developed a post-processing framework to estimate the abun...
ABSTRACT We have recently developed a post-processing framework to estimate the abun...
We investigate improved, more physical methods for modelling key processes in galaxy formation that ...
We study the evolution of the cold gas content of galaxies by splitting the interstellar medium into...
We study the evolution of atomic and molecular gas in galaxies in semi-analytic models of galaxy for...
We study the evolution of atomic and molecular gas in galaxies in semi-analytic models of galaxy for...
We investigate the atomic (HI) and molecular (H2) Hydrogen content of normal galaxies by combining o...
We present a simulation of the cosmic evolution of the atomic and molecular phases of the cold hydro...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
The current cosmological model, the Lambda CDM theory, describes with remarkable precision the assem...
In this chapter, we discuss the current status of observational and computational studies on galaxy ...
We extend the existing semi-analytic models of galaxy formation to track atomic and molecular gas in...
International audienceWe update our recently published model for GAlaxy Evolution and Assembly (GAEA...
We present a semi-empirical model to infer the atomic and molecular hydrogen content of galaxies as ...
ABSTRACT We have recently developed a post-processing framework to estimate the abun...
ABSTRACT We have recently developed a post-processing framework to estimate the abun...